A driver device and a corresponding method for driving a load, in particular an LED unit comprising one or more LEDs. The proposed driver device comprises power input terminals for receiving a rectified supply voltage from an external power supply, power output terminals for providing a drive voltage and/or current for driving a load, a half bridge unit comprising a first and second switching element coupled in series between a high voltage node and a low voltage node and having a switch node between the first and second switching elements, a buck-boost input filter unit comprising a first inductor and a series diode coupled between a power input terminal and the half bridge unit, a buck output filter unit comprising a second inductor coupled between the half bridge unit and a power output terminal, an energy storage unit, and a control unit for controlling the switching elements.
Legal claims defining the scope of protection, as filed with the USPTO.
1. A driver device for driving an LED unit comprising one or more LEDs, said driver device comprising: power input terminals for receiving a rectified supply voltage from an external power supply, power output terminals for providing a drive voltage and/or current for driving a load, a half bridge unit comprising a first and second switching element coupled in series between a high voltage node and a low voltage node and having a switch node between said first and second switching elements, a buck-boost input filter unit comprising a first inductor and a series diode coupled between a power input terminal and said half bridge unit, a buck output filter unit comprising a second inductor coupled between said half bridge unit and a power output terminal, an input decoupling capacitor coupled between the power input terminals, an output decoupling capacitor coupled between the power output terminals, wherein the output decoupling capacitor is in parallel with the load, and a control unit for controlling said switching elements, and an energy storage unit coupled between either a low power input terminal and said low voltage node of said half bridge unit, or a high power input terminal and said high voltage node of said half bridge unit; wherein the driver device is configured for zero voltage switching of the first and second switching elements.
2. The driver device as claimed in claim 1 , wherein a high power input terminal is coupled to the high voltage node of the half bridge unit and a low power input terminal is coupled to the buck-boost input filter unit.
3. The driver device as claimed in claim 2 , wherein an input terminal of said buck-boost input filter unit is coupled to the low power input terminal and wherein the output terminal of said buck-boost input filter unit is coupled to the switch node of the half bridge unit.
4. The driver device as claimed in claim 1 , wherein the input terminal of said buck-boost input filter unit is coupled to the energy storage unit or the low power output terminal and wherein the input and output terminals of said buck-boost input filter unit are coupled to the switch node of the half bridge unit and the low power input terminal.
5. The driver device as claimed in claim 1 , wherein said energy storage unit comprises a charge capacitor.
6. The driver device as claimed in claim 1 , further comprising a rectifying unit for rectifying an AC supply voltage, in particular a mains voltage, into said rectified supply voltage.
7. The driver device as claimed in claim 1 , wherein the control unit is configured to keep an output current of the half bridge unit constant, the voltage across said energy storage unit below a predetermined threshold.
8. A light apparatus comprising: a light assembly comprising one or more LED units comprising one or more LEDs; and a driver device for driving said light assembly as claimed in claim 1 .
Cooperative Patent Classification codes for this invention. Click any code to explore related patents in that topic.
June 6, 2012
May 24, 2016
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